Omrani Emad, Siddaiah Arpith, Moghadam Afsaneh Dorri, Garg Uma, Rohatgi Pradeep, Menezes Pradeep L
Department of Materials Science and Engineering, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, USA.
Department of Mechanical Engineering, University of Nevada, Reno, NV 89557, USA.
Nanomaterials (Basel). 2021 Mar 1;11(3):610. doi: 10.3390/nano11030610.
Graphite nanoplatelets (GNPs) as an oil nano additive has gained importance to enhance the lubrication properties of renewable lubricants, such as vegetable oils. Using appropriately processed GNPs is necessary to gain the required tribological advantage. The present study investigated ball-milled GNPs, to understand the effect of GNPs concentration, and applied load on tribological behavior. Pin-on-disk tests were employed, to investigate the tribological performance of the nano-additive oil-based lubricant in the boundary lubrication regime. In order gain an understanding of the lubrication mechanism, Scanning Electron Microscope (SEM), Energy-Dispersive X-ray Spectroscopy (EDX), and Raman Spectroscopy were performed for characterization. The study found that there is a critical concentration of GNPs, below and above which a reduced wear rate is not sustained. It is found that the tribological enhancements at the optimum concentration of GNP in boundary lubrication condition are a result of reduced direct metal-metal contact area at the interface. This phenomenon, along with the reduced shear strength of the ball-milled GNPs, is indicated to reduce the formation of asperity junctions at the interface and enhance tribological properties of the nano-additive oil-based lubricant.
作为一种油纳米添加剂,石墨纳米片(GNPs)对于提高可再生润滑剂(如植物油)的润滑性能变得越来越重要。使用经过适当处理的GNPs对于获得所需的摩擦学优势是必要的。本研究对球磨GNPs进行了研究,以了解GNPs浓度和施加负荷对摩擦学行为的影响。采用销盘试验来研究纳米添加剂油基润滑剂在边界润滑状态下的摩擦学性能。为了理解润滑机制,使用扫描电子显微镜(SEM)、能量色散X射线光谱(EDX)和拉曼光谱进行表征。研究发现,存在一个GNPs的临界浓度,低于和高于该浓度,磨损率的降低都无法持续。研究发现,在边界润滑条件下,GNP最佳浓度时的摩擦学增强是由于界面处直接金属-金属接触面积减小所致。这种现象,连同球磨GNPs剪切强度的降低,被认为可减少界面处粗糙接触点的形成,并提高纳米添加剂油基润滑剂的摩擦学性能。